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基于微透镜阵列的裸眼 3D 显示,采用组合微纳压印和紫外光偏移印刷方法。

Naked-Eye 3D Display Based on Microlens Array Using Combined Micro-Nano Imprint and UV Offset Printing Methods.

机构信息

State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou 510640, China.

YUTO R&D Institute, Shenzhen YUTO Packaging Technology Co., Ltd., Shenzhen 518108, China.

出版信息

Molecules. 2020 Apr 25;25(9):2012. doi: 10.3390/molecules25092012.

Abstract

An optical film integrating microlens array (MLAs) and 3D micro-graphics is an important way to achieve the naked-eye 3D display effect. The 3D micro-graphics is traditionally generated by the micro-nano imprint technology based on precision engraving mold, which leads to high production cost and low production efficiency, and thus restricts the rapid response to production tasks and large-scale popularization and application. In this study, a process scheme for large-scale printing of 3D micro-graphics using UV offset printing based on presensitized (PS) plate was proposed, matching with the MLAs fabricated by micro-nano imprint process to achieve naked-eye 3D display effect. We used the laser confocal microscope to systematically measure and analyze the geometric and optical performance of the fabricated MLAs in terms of height, curvature radius, center distance, spacing, focal length, and numerical aperture, and evaluated the influence of the publishing resolution of the PS plate on the display effect of 3D micro-graphics. The printing quality and display effect of 3D micro-graphics were further improved by adjusting process parameters such as printing speed and printing pressure. The results of the current study demonstrate that the combined application of micro-nano imprint technology based on precision mold and UV offset printing technology based on PS plate can achieve an excellent naked-eye 3D display effect in 360° all angles, which is efficient, cost-saving, and highly flexible.

摘要

一种集成微透镜阵列(MLAs)和 3D 微图形的光学膜是实现裸眼 3D 显示效果的重要途径。3D 微图形传统上是通过基于精密雕刻模具的微纳压印技术生成的,这导致了高生产成本和低生产效率,从而限制了对生产任务的快速响应以及大规模的普及和应用。在这项研究中,提出了一种使用基于预敏化(PS)板的 UV 胶印进行 3D 微图形大规模打印的工艺方案,与通过微纳压印工艺制造的 MLAs 相匹配,以实现裸眼 3D 显示效果。我们使用激光共聚焦显微镜系统地测量和分析了制造的 MLAs 的高度、曲率半径、中心距、间距、焦距和数值孔径等几何和光学性能,并评估了 PS 板的出版分辨率对 3D 微图形显示效果的影响。通过调整打印速度和打印压力等工艺参数,进一步提高了 3D 微图形的打印质量和显示效果。本研究的结果表明,基于精密模具的微纳压印技术和基于 PS 板的 UV 胶印技术的组合应用可以在 360°全方位实现出色的裸眼 3D 显示效果,具有高效、节省成本和高度灵活的特点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c12/7248864/3b3f502ea951/molecules-25-02012-g001a.jpg

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